Abstract. A two-stage computational model of the evolution of a plume generated by laser ablation of an organic solid is presented and discussed. The first stage of the laser ablation involves laser coupling to the target and ejection of the plume and is described by molecular dynamics (MD) simulations. The following stage of a long-term expansion of the ejected plume is modeled by the direct simulation Monte Carlo (DSMC) method. The results of the MD simulations demonstrate that the physical mechanism of material ejection at sufficiently high laser fluences is a phase explosion of the overheated material followed by a homogeneous decomposition of the expanding plume into a mixture of liquid droplets (molecular clusters) and gas phase molec...
A coarse-grained model has been developed for molecular dynamics simulations of the interaction of l...
Expansion of ablation plumes created by intense ultrashort lasers is determined by various complicat...
We have developed a simplified molecular-dynamical model for simulating ablation of solid surfaces b...
The main objective of this study is to explain the experimental observations. To simulate material a...
The interaction of a powerful laser beam with a target material may result in the formation of a plu...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...
Abstract. The early stage of the ablation plume formation and the following dynamics of the plume ex...
Contents I. Introduction 321 II. Computational Methods for Laser Ablation of Molecular Systems 32...
The molecular dynamics (MD) simulation technique has been applied to investigate fundamental aspects...
International audienceThe molecular dynamics (MD) simulation technique has been applied to investiga...
International audienceA hybrid model, which combines a bead-and-spring approach with the breathing s...
Le but de cette étude est de comprendre la formation et l évolution des nano-agrégats créés lors de ...
Vaporization, spallation and phase explosion are considered to be the main mechanisms contributing t...
International audienceCollisional processes leading to the formation of nanoparticles in a laser-abl...
Molecular dynamics simulations are used to investigate the effect of photochemical processes on mole...
A coarse-grained model has been developed for molecular dynamics simulations of the interaction of l...
Expansion of ablation plumes created by intense ultrashort lasers is determined by various complicat...
We have developed a simplified molecular-dynamical model for simulating ablation of solid surfaces b...
The main objective of this study is to explain the experimental observations. To simulate material a...
The interaction of a powerful laser beam with a target material may result in the formation of a plu...
International audienceThe mechanisms involved into the formation of clusters by pulsed laser ablatio...
Abstract. The early stage of the ablation plume formation and the following dynamics of the plume ex...
Contents I. Introduction 321 II. Computational Methods for Laser Ablation of Molecular Systems 32...
The molecular dynamics (MD) simulation technique has been applied to investigate fundamental aspects...
International audienceThe molecular dynamics (MD) simulation technique has been applied to investiga...
International audienceA hybrid model, which combines a bead-and-spring approach with the breathing s...
Le but de cette étude est de comprendre la formation et l évolution des nano-agrégats créés lors de ...
Vaporization, spallation and phase explosion are considered to be the main mechanisms contributing t...
International audienceCollisional processes leading to the formation of nanoparticles in a laser-abl...
Molecular dynamics simulations are used to investigate the effect of photochemical processes on mole...
A coarse-grained model has been developed for molecular dynamics simulations of the interaction of l...
Expansion of ablation plumes created by intense ultrashort lasers is determined by various complicat...
We have developed a simplified molecular-dynamical model for simulating ablation of solid surfaces b...